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A flexible structure with surface-bonded piezoceramic patches is modelled using Timoshenko beam theory.
The equations of motion of a flexible structure with a set of arbitrarily distributed CMGs are developed.
Dynamic responses of a jointed flexible structure with and without viscoelastic and active joint actuators are presented and compared.
By possessing a complicated flexible structure with several fin rays made by a thin film, the fin exhibits a three-dimensional (3D) motion.
Indeed, a design method of rejection perturbation in presence of potentially faults, on a flexible structure with integrated piezo-ceramics, is presented.
In summary, a novel vibration absorption scheme using fuzzy logic has been demonstrated to significantly enhance the performance of a flexible structure with resonant response.
Similar(45)
This paper describes a study of the non-linear structural dynamics of jointed flexible structures with initial joint clearance and subjected to external excitations.
The control system robustness of flexible structures with parameter perturbation uncertainty is discussed.
However, modern wind turbines are flexible structures with resonance frequencies as low as 0.2 Hz.
The system is a conceptualization of a vibration-absorbing device for flexible structures with tip appendages.
This paper deals with the problem of designing an observer based robust controller to stabilize flexible structures with bounded parametric uncertainties, nonlinearities and external excitations.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com